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基于联苯取代喹啉的阴离子受体溶剂依赖焓变与熵变阴离子结合。

Solvent-dependent enthalpic versus entropic anion binding by biaryl substituted quinoline based anion receptors.

机构信息

Institut für Organische Chemie, RWTH Aachen , Landoltweg 1, D-52074 Aachen, Germany.

出版信息

J Phys Chem B. 2015 Jan 8;119(1):301-6. doi: 10.1021/jp510796f. Epub 2014 Dec 17.

Abstract

Anion receptors based on an 8-thiourea substituted quinoline with pentafluorinated (1a) or nonfluorinated (1b) biarylamide groups in the 2-position show similar binding of halide anions with somewhat higher association constants for the more acidic fluorinated derivative. Surprisingly, binding affinities for the halides in the case of the nonfluorinated 1b are similar in nonpolar chloroform or polar DMSO as solvent. Thorough thermodynamic investigations based on NMR van't Hoff analysis show that anion binding in chloroform is mainly enthalpically driven. In DMSO, entropy is the driving force for the binding of the ions with replacement of attached solvent.

摘要

基于 8-硫脲取代的喹啉与 2-位带有全氟(1a)或非氟(1b)联苯酰胺基团的阴离子受体对卤化物阴离子具有相似的结合能力,对于更酸性的氟化衍生物,其结合常数稍高。令人惊讶的是,在非极性氯仿或极性 DMSO 溶剂中,非氟代 1b 对卤化物的结合亲和力相似。基于 NMR van't Hoff 分析的彻底热力学研究表明,氯仿中的阴离子结合主要是焓驱动的。在 DMSO 中,取代配位溶剂的离子结合的驱动力是熵。

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